QTH-120-02-H-D-GP Allicdata Electronics
Allicdata Part #:

QTH-120-02-H-D-GP-ND

Manufacturer Part#:

QTH-120-02-H-D-GP

Price: $ 20.82
Product Category:

Connectors, Interconnects

Manufacturer: Samtec Inc.
Short Description: .5MM DOUBLE ROW MI SOCKET ASSEMB
More Detail: 240 Position Connector Header, Outer Shroud Contac...
DataSheet: QTH-120-02-H-D-GP datasheetQTH-120-02-H-D-GP Datasheet/PDF
Quantity: 1000
200 +: $ 18.92770
Stock 1000Can Ship Immediately
$ 20.82
Specifications
Series: Q Strip® QTH
Packaging: Bulk 
Part Status: Active
Connector Type: Header, Outer Shroud Contacts
Number of Positions: 240
Pitch: 0.020" (0.50mm)
Number of Rows: 2
Mounting Type: Surface Mount
Features: Ground Bus (Plane), Mating Guide
Contact Finish: Gold
Contact Finish Thickness: 30.0µin (0.76µm)
Mated Stacking Heights: 8mm
Height Above Board: 0.286" (7.26mm)
Description

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The QTH-120-02-H-D-GP is a type of rectangular connector arrays, edge type, mezzanine (board to board). This connector is designed for use in high-density microelectronics computing applications, such as embedded computers or medical equipment. The connector has two rows of 60 pins each, arranged in a pattern that is 2.54mm staggered, allowing for a high-density arrangement of components on the board. Additionally, it is designed to be fully compliant with the IEEE802.3 standards, allowing for reliable and secure connections between components.

The main application for the QTH-120-02-H-D-GP connector is in high-density microelectronics computing applications, such as embedded computers or medical equipment. It is designed to withstand high-density power interconnects and provide highly reliable and secure connection between components. Additionally, it can be used in systems where a high-speed coaxial or optical connection is required. It is also suitable for miniaturized electronics systems, such as those used in consumer electronics.

The QTH-120-02-H-D-GP connector is designed with an edge type, meaning that the two rows are arranged in a way that allows them to fit side-by-side on the same board without interference from one another. This gives the user the ability to create complex and dense arrangements of components. Additionally, the connector is designed to flow solder and support a range of board spacings so that the user can optimize the board’s layout.The QTH-120-02-H-D-GP connector is designed with a mezzanine (board to board) arrangement, which means that the connected component is placed between two individual boards. This allows for highly reliable and secure connections between boards and components without compromising the signal integrity of the connection. The QTH-120-02-H-D-GP connector also utilizes a highly reliable contact system. It uses high-tensile strength gold-plated contacts for excellent corrosion resistance and superior signal integrity. Additionally, the contact system is designed to maintain excellent signal integrity over a wide range of temperatures and environmental conditions. The contact system is also designed to be very low profile, making it ideal for use in the tightest spaces.

The working principle of the QTH-120-02-H-D-GP connector is fairly straightforward. It consists of two rows of 60 pins which provide electrical connection between the component and the board. When two components are connected, the pins make contact and provide electrical connection. The connector is designed so that the pins fit into holes in the board, and they are soldered into place for a secure connection. The design also allows for easy disassembly and reassembly of components when needed.

The QTH-120-02-H-D-GP is a highly reliable and secure board-to-board solution for high-density microelectronics applications. It is designed with an edge type for efficient multi-board connections and a mezzanine arrangement for secure connections. It also utilizes a highly reliable contact system to ensure signal integrity and corrosion resistance over a wide range of temperatures and environmental conditions. Additionally, its low profile design allows for use in the tightest spaces.

The specific data is subject to PDF, and the above content is for reference

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